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Mechanisms of Monocrotophos Resistance in Cotton Bollworm, Helicoverpa armigera (hubner

机译:棉铃虫棉铃虫对久效磷的抗性机理

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摘要

Insensitive acetylcholinesterase was identified as a resistance mechanism by comparing biochemical analysis with a laboratory selected monocrotophos resistant cotton bollworm (RR: 200) and the susceptible strain. The cDNA encoding AChE was cloned by the method of RACE (rapid amplification of cDNA ends). The complete AChE gene deduced from the cDNA consisted of a putative signal peptide of 32 amino acid residues, a mature protein of 615 residues, 5' untranslated regions (UTR) of 315 bp and 3'UTR of 324 BP. The coding sequence had a high degree of homology to the AChE from other insect species reported in the GenBank. After comparing analysis of the entire AChE gene sequence from 5 resistant and 6 susceptible cotton bollworm individuals, nine mutations were identified. One of them, the Ala/Thr mutation, is likely to be responsible for the AChE insensitivity to monocrotophos.
机译:通过将生化分析与实验室选择的久效磷抗性棉铃虫(RR:200)和易感菌株进行比较,将不敏感的乙酰胆碱酯酶鉴定为耐药机制。通过RACE(cDNA末端的快速扩增)的方法克隆了编码AChE的cDNA。由cDNA推导的完整的AChE基因由32个氨基酸残基的推定信号肽,615个残基的成熟蛋白,315 bp的5'非翻译区(UTR)和324 BP的3'UTR组成。该编码序列与GenBank中报道的其他昆虫物种的AChE具有高度同源性。在比较了5个抗药性棉铃虫和6个易感棉铃虫个体的整个AChE基因序列的分析后,鉴定出9个突变。其中之一是Ala / Thr突变,可能是AChE对久效磷不敏感的原因。

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